resistor-fixed-precision-high-voltage-caddock-type-mg-and-hg.pdf

The datasheet in question is a detailed document that presents the procurement criteria for fixed, metal oxide, precision high voltage resistors tailored for use in high-voltage and high-resistance requirements within space system electronic circuits at the NASA Goddard Space Flight Center (GSFC). This document is identified as “S-311-P-683” and is applicable for the acquisition of resistors with specific designations, styles, resistance values, and tolerance levels. The outlined resistors are distinguished by a unique Goddard part number that encapsulates the style, resistance value, and tolerance. According to the document, these resistors are integral components for GSFC’s electronic circuits that require precision and stability under high-voltage conditions.

Summary of Extracted Information

Scope: This datasheet explicates the standards for fixed, metal oxide, precision high voltage resistors required by GSFC. The resistors detailed are for electronic circuits that necessitate enduring high voltages while upholding precise resistance values and stability.

Part Numbering System: The resistors are identified by a part number, which includes the Goddard Designator, style as indicated in section 1.3, resistance value from section 1.4, and tolerance as specified in section 1.5 represented by letters in Table II.

Style: The style, in relation to the resistor’s type and dimensions, corresponds with the first three digits of the dash number. The ensuing three digits indicate significant figures for the resistance value, and the last digit denotes the number of trailing zeroes.

Resistance Value: The specified resistance values range from 750 to 1006 ohms, with values chosen within standard resistance ranges documented in the included tables.

Tolerance: Tolerance levels are associated with a specific letter, dictating the permissible deviation in resistance values, hence influencing their precision in electronic circuits.

The datasheet also includes a revisions section, highlighting the updates made over the years, outlining the substantial rewrite from 07/02/96 and changes incorporated on 07/05/01. The originator, approvals, and supervisory endorsements from GSFC officials further authenticate the document. Additionally, the layout includes an illustrated figure (Figure 1) of the resistor’s outline, underscoring the physical dimensions of the component, measured in inches and millimeters, to provide visual guidance for procurers and engineers handling these resistors. The document is marked with the CAGE code 25306 for the Goddard Space Flight Center, and page references suggest a comprehensive document spanning at least 13 pages.

This summary, optimized for search engine visibility, pinpoints crucial data from the first two pages, allowing for efficient insight into the resistor specifications regulated and employed by the Goddard Space Flight Center for high-voltage situations in space system electronics.

References:

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